• DocumentCode
    988481
  • Title

    Surface Plasmon Resonance Effects in the Magneto-Optical Activity of Ag–Co–Ag Trilayers

  • Author

    Vila, Elías Ferreiro ; Bendana Sueiro, X.M. ; González-Díaz, Juan Bautista ; García-Martín, Antonio ; García-Martín, José Miguel ; Cebollada Navarro, A. ; Armelles Reig, G. ; Meneses Rodriguez, D. ; Sandoval, Emilio Muñoz

  • Author_Institution
    Inst. de Microelectron. de Madrid, Tres Cantos, Spain
  • Volume
    44
  • Issue
    11
  • fYear
    2008
  • Firstpage
    3303
  • Lastpage
    3306
  • Abstract
    A complete magneto-optical characterization of Pt capped Ag-Co-Ag sputtered trilayers with varying Co thickness is presented. Polar Kerr rotation and ellipticity exhibit a gradual increase in signal as the Co layer gets thicker, with a sharp feature around 3.75 eV due to the bulk Ag plasmon resonance. The transverse Kerr signal of such trilayers is strongly affected by the surface plasmon polariton (SPP) resonance excitation when measured in the Kretschmann configuration, with a maximum transverse Kerr effect for around 2 nm Co thickness which corresponds to the optimum SPP excitation. This behavior is in contrast with the monotonous increase in transverse Kerr signal with Co thickness measured when the SPP is not excited. These results are in qualitative agreement with simulations using the transfer matrix formalism, the discrepancies mainly being due to the deviation from 2-D growth of the system and possible Ag and Co oxidation effects.
  • Keywords
    cobalt alloys; magnetic thin films; magneto-optical effects; optical Kerr effect; oxidation; platinum; polaritons; silver alloys; sputtered coatings; surface plasmon resonance; Kretschmann configuration; Polar Kerr rotation; Pt-AgCoAg; magnetic thin films; magneto-optical activity; oxidation effects; plasmon resonance; resonance excitation; sputtered trilayers; surface plasmon polariton; surface plasmon resonance effects; transfer matrix formalism; transverse Kerr effect; Cobalt; magnetic thin films; magneto-optic Kerr effect; silver;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2008.2002381
  • Filename
    4674583